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Strings as Physical Lines in Vacuum: Basic Concepts for the Computation of the Planck Length and the Planck Mass

High Energy Physics - Theory 2007-05-23 v1

Abstract

Certain linear objects, termed physical lines, are considered, and initial assumptions concerning their properties are introduced. A closed physical line in the form of a circle, termed J-string, is singled out for investigation. It is shown that this curve consists of indivisible line segments of length Δ\ell_\Delta. It is assumed that a J-string has an angular momentum whose value is \hbar.It is then established that a J-string of radius RR possesses a mass mJm_J, equal to h/2πcRh/2\pi c R, a corresponding energy, as well as a charge qJq_J, where qJ=(hc/2π)1/2q_J = (hc/2\pi)^{1/2}. It is also established that Δ=2π(hG/c3)1/2\ell_\Delta = 2\pi(hG/c^3)^{1/2}, where cc is the speed of light and GG is the gravitational constant. % Based upon investigation of the properties and characteristics of J-strings, a method is developed for the computation of the Planck length and mass (P,mP)(\ell^*_P, m^*_P). The values of P\ell^*_P and mPm^*_P are computed according to the resulting formulae (and given in the paper); these values differ from the currently accepted ones.

Keywords

Cite

@article{arxiv.hep-th/0012204,
  title  = {Strings as Physical Lines in Vacuum: Basic Concepts for the Computation of the Planck Length and the Planck Mass},
  author = {Aharon Nudelman},
  journal= {arXiv preprint arXiv:hep-th/0012204},
  year   = {2007}
}

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14 pages